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Epibatidine Blocks Eye-Specific Segregation in Ferret Dorsal Lateral Geniculate Nucleus during Stage III Retinal Waves

机译:Epibatidine阻断III期视网膜波期间雪貂背侧外侧细核中的眼睛特异性分离

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摘要

The segregation and maintenance of eye-specific inputs in the dorsal lateral geniculate nucleus (dLGN) during early postnatal development requires the patterned spontaneous activity of retinal waves. In contrast to the development of the mouse, ferret eye-specific segregation is not complete at the start of stage III glutamatergic retinal waves, and the remaining overlap is limited to the C/C1 lamina of the dLGN. To investigate the role of patterned spontaneous activity in this late segregation, we disrupted retinal waves pharmacologically for 5 day windows from postnatal day (P) 10 to P25. Multi-electrode array recordings of the retina in vitro reveal that the cholinergic agonist epibatidine disrupts correlated retinal activity during stage III waves. Epibatidine also prevents the segregation of eye-specific inputs in vivo during that period. Our results reveal a novel role for cholinergic influence on stage III retinal waves as an instructive signal for the continued segregation of eye-specific inputs in the ferret dLGN.
机译:出生后早期发育过程中,眼侧输入在背外侧膝状核(dLGN)中的分离和维持要求视网膜波具有一定的自发活动模式。与小鼠的发育相反,雪貂眼特异性隔离在III期谷氨酸能视网膜波开始时不完全,并且剩余的重叠仅限于dLGN的C / C1椎板。为了研究模式化的自发活动在这种晚期分离中的作用,我们从药理学上讲,从产后第10天到第25天的5天窗中断了视网膜波。体外视网膜多电极阵列记录显示,胆碱能激动剂Epibatidine破坏了III期波期间的相关视网膜活性。 Epibatidine还可以防止在此期间体内眼睛特定输入的分离。我们的结果揭示了胆碱能对III期视网膜波的胆碱能影响的新作用,将其作为继续隔离雪貂dLGN中特定于眼睛的输入的指导性信号。

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